/usr/include/shogun/features/ImplicitWeightedSpecFeatures.h is in libshogun-dev 3.2.0-7.5.
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* This program is free software; you can redistribute it and/or modify
* it under the terms of the GNU General Public License as published by
* the Free Software Foundation; either version 3 of the License, or
* (at your option) any later version.
*
* Written (W) 2009-2010 Soeren Sonnenburg
* Copyright (C) 2009 Fraunhofer Institute FIRST and Max-Planck-Society
* Copyright (C) 2010 Berlin Institute of Technology
*/
#ifndef _IMPLICITSPECFEATURES_H___
#define _IMPLICITSPECFEATURES_H___
#include <shogun/lib/common.h>
#include <shogun/io/SGIO.h>
#include <shogun/features/DotFeatures.h>
#include <shogun/features/StringFeatures.h>
namespace shogun
{
template <class ST> class CStringFeatures;
/** @brief Features that compute the Weighted Spectrum Kernel feature space
* explicitly.
*
* \sa CWeightedCommWordStringKernel
*/
class CImplicitWeightedSpecFeatures : public CDotFeatures
{
public:
/** default constructor */
CImplicitWeightedSpecFeatures();
/** constructor
*
* @param str stringfeatures (of words)
* @param normalize whether to use sqrtdiag normalization
*/
CImplicitWeightedSpecFeatures(CStringFeatures<uint16_t>* str, bool normalize=true);
/** copy constructor */
CImplicitWeightedSpecFeatures(const CImplicitWeightedSpecFeatures & orig);
virtual ~CImplicitWeightedSpecFeatures();
/** duplicate feature object
*
* @return feature object
*/
virtual CFeatures* duplicate() const;
/** obtain the dimensionality of the feature space
*
* (not mix this up with the dimensionality of the input space, usually
* obtained via get_num_features())
*
* @return dimensionality
*/
virtual int32_t get_dim_feature_space() const;
/** compute dot product between vector1 and vector2,
* appointed by their indices
*
* @param vec_idx1 index of first vector
* @param df DotFeatures (of same kind) to compute dot product with
* @param vec_idx2 index of second vector
*/
virtual float64_t dot(int32_t vec_idx1, CDotFeatures* df, int32_t vec_idx2);
/** compute dot product between vector1 and a dense vector
*
* @param vec_idx1 index of first vector
* @param vec2 pointer to real valued vector
* @param vec2_len length of real valued vector
*/
virtual float64_t dense_dot(int32_t vec_idx1, const float64_t* vec2, int32_t vec2_len);
/** add vector 1 multiplied with alpha to dense vector2
*
* @param alpha scalar alpha
* @param vec_idx1 index of first vector
* @param vec2 pointer to real valued vector
* @param vec2_len length of real valued vector
* @param abs_val if true add the absolute value
*/
virtual void add_to_dense_vec(float64_t alpha, int32_t vec_idx1,
float64_t* vec2, int32_t vec2_len, bool abs_val=false);
/** get number of non-zero features in vector
*
* @param num which vector
* @return number of non-zero features in vector
*/
virtual int32_t get_nnz_features_for_vector(int32_t num);
/** get feature type
*
* @return templated feature type
*/
virtual EFeatureType get_feature_type() const;
/** get feature class
*
* @return feature class
*/
virtual EFeatureClass get_feature_class() const;
/** get number of strings
*
* @return number of strings
*/
virtual int32_t get_num_vectors() const;
/** set weighted degree weights
*
* @return if setting was successful
*/
bool set_wd_weights();
/** set custom weights (swig compatible)
*
* @param w weights
* @param d degree (must match number of weights)
* @return if setting was successful
*/
bool set_weights(float64_t* w, int32_t d);
#ifndef DOXYGEN_SHOULD_SKIP_THIS
/** iterator for weighted spectrum features */
struct wspec_feature_iterator
{
/** pointer to feature vector */
uint16_t* vec;
/** index of vector */
int32_t vidx;
/** length of vector */
int32_t vlen;
/** if we need to free the vector*/
bool vfree;
/** @name Internal Parameters
* parameters of interal feature gen loop
*/
//@{
int32_t offs;
int32_t d;
int32_t j;
uint8_t mask;
float64_t alpha;
//@}
};
#endif
/** iterate over the non-zero features
*
* call get_feature_iterator first, followed by get_next_feature and
* free_feature_iterator to cleanup
*
* @param vector_index the index of the vector over whose components to
* iterate over
* @return feature iterator (to be passed to get_next_feature)
*/
virtual void* get_feature_iterator(int32_t vector_index);
/** iterate over the non-zero features
*
* call this function with the iterator returned by get_first_feature
* and call free_feature_iterator to cleanup
*
* @param index is returned by reference (-1 when not available)
* @param value is returned by reference
* @param iterator as returned by get_first_feature
* @return true if a new non-zero feature got returned
*/
virtual bool get_next_feature(int32_t& index, float64_t& value, void* iterator);
/** clean up iterator
* call this function with the iterator returned by get_first_feature
*
* @param iterator as returned by get_first_feature
*/
virtual void free_feature_iterator(void* iterator);
/** @return object name */
virtual const char* get_name() const { return "ImplicitWeightedSpecFeatures"; }
protected:
/** compute the sqrt diag normalization constant per string
*
* \sa CSqrtDiagKernelNormalization
*/
void compute_normalization_const();
protected:
/** reference to strings */
CStringFeatures<uint16_t>* strings;
/** use sqrtdiag normalization */
float64_t* normalization_factors;
/** number of strings */
int32_t num_strings;
/** size of alphabet */
int32_t alphabet_size;
/** degree */
int32_t degree;
/** size of k-mer spectrum*/
int32_t spec_size;
/** weights for each of the subkernels of degree 1...d */
float64_t* spec_weights;
};
}
#endif // _IMPLICITSPECFEATURES_H___
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